Improved heart function with myogenesis and angiogenesis after autologous porcine bone marrow stromal cell transplantation

Objective: The study evaluated the utility of transplanting bone marrow stromal cells in a porcine myocardial infarction model. Methods: A myocardial infarction was created by occluding the distal left anterior descending artery in pigs with coils and Gelfoam sponge. Sternal bone marrow was aspirate...

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Veröffentlicht in:The Journal of thoracic and cardiovascular surgery 2002-06, Vol.123 (6), p.1132-1140
Hauptverfasser: Tomita, Shinji, Mickle, Donald A.G., Weisel, Richard D., Jia, Zhi-Qiang, Tumiati, Laura C., Allidina, Yasmin, Liu, Peter, Li, Ren-Ke
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Sprache:eng
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Zusammenfassung:Objective: The study evaluated the utility of transplanting bone marrow stromal cells in a porcine myocardial infarction model. Methods: A myocardial infarction was created by occluding the distal left anterior descending artery in pigs with coils and Gelfoam sponge. Sternal bone marrow was aspirated, and stromal cells were cultured and induced to differentiate to a myogenic phenotype with 5-azacytidine. Four weeks after coronary artery occlusion, sestamibi technetium single-photon emission computed tomographic scans were performed, and then either a graft of 100 × 106 bone marrow stromal cells (n = 5, 30% labeled with bromodeoxyuridine) or culture medium (n = 6) was injected into the infarct region. Four weeks later the tomographic scans were repeated and cardiac function was assessed with pressure and volume measurements. Morphologic and histologic characteristics of the heart were also studied. Results: Histologic examination found bromodeoxyuridine-labeled cells within the infarct region in islands that had sarcomeres and Z-bands and stained positively for cardiac specific troponin I. The bone marrow stromal cell transplant sites had a greater (P
ISSN:0022-5223
1097-685X
DOI:10.1067/mtc.2002.120716